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EP 0 932 356 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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11.12.2002 Bulletin 2002/50 |
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Date of filing: 14.05.1998 |
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International application number: |
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PCT/IB9800/724 |
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International publication number: |
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WO 9900/3385 (28.01.1999 Gazette 1999/04) |
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TIMER WITH ADJUSTABLE TIME CONTROL BASED ON AN RC OSCILLATOR WITH A VARIABLE RESISTOR,
AND TOASTER INCLUDING SUCH A TIMER
REGELBARER ZEITSCHALTER MIT EINEM RC-OSZILLATOR MIT EINSTELLBAREM WIDERSTAND, SOWIE
BROTRÖSTER AUSGERÜSTET MIT EINEM SOLCHEN ZEITSCHALTER
MINUTERIE AVEC COMMANDE DE TEMPS REGLABLE BASEE SUR UN OSCILLATEUR RC AVEC RESISTANCE
VARIABLE, ET GRILLE-PAIN COMPRENANT UNE TELLE MINUTERIE
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Designated Contracting States: |
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AT DE ES FR GB IT NL |
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Priority: |
17.07.1997 EP 97202250
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Date of publication of application: |
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04.08.1999 Bulletin 1999/31 |
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Proprietor: Koninklijke Philips Electronics N.V. |
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5621 BA Eindhoven (NL) |
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Inventors: |
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- LULOFS, Klaas, Jacob
NL-5656 AA Eindhoven (NL)
- BIJ DE LEIJ, Tjerk, Cornelis
NL-5656 AA Eindhoven (NL)
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Representative: Hesselmann, Gerardus Johannes Maria et al |
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Internationaal Octrooibureau B.V.,
P.O. Box 220 5600 AE Eindhoven 5600 AE Eindhoven (NL) |
| (56) |
References cited: :
EP-A1- 0 086 624 US-A- 5 402 708
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US-A- 5 044 263
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
[0001] The invention relates to an RC oscillator having a controllable oscillation frequency,
comprising: a series arrangement of a capacitor and resistor, and a signal source
for supplying a step signal to the series arrangement, the oscillation frequency in
operation being dependent upon the time which expires until the capacitor has been
charged to a given value.
[0002] The invention further relates to an electric toaster comprising: an electric heating
element, means for connecting the heating element to an electric power source, an
adjustable timer for disconnecting the heating element from the electric power source
after expiry of an adjustable time, the adjustable timer including such an RC oscillator.
[0003] Such an RC oscillator and toaster are known from, for example, European Patent Application
EP-A-0 086 624. This known toaster has a timer by means of which the toasting time
can be set. The timer comprises an RC oscillator and a divider circuit which divides
the comparatively high oscillation frequency of the RC oscillator to a signal having
a low frequency and a period whose length is suitable for toasting. The generation
of the oscillation frequency is based on the application of a step voltage to a series
arrangement of a resistor and a capacitor and on subsequently waiting until the voltage
across the capacitor exceeds a given threshold voltage. In the known RC oscillator
the resistance is varied by means of a potentiometer so as to enable the period of
the oscillation frequency to be controlled. The threshold voltage is exceeded sooner
and the period becomes smaller according as the resistance decreases. Since the resistance
of a potentiometer generally has a fairly large tolerance there is a comparatively
large spread in the frequency generated by the RC oscillator. If such a potentiometer
is now used in the timer of a toaster the toasting time obtained for a given setting
of the control knob or slide of the potentiometer will differ from toaster to toaster.
[0004] It is an object of the invention to provide a solution to the problems mentioned
above. To this end, the RC oscillator of the type defined in the opening paragraph
is characterized in that the signal source comprises an adjustable voltage divider,
the divider being arranged in parallel to the signal source for dividing the amplitude
of the step signal and having an output connected to the series arrangement for supplying
a divided step signal to the series arrangement.
[0005] The invention is based on the recognition of the fact that it is the amplitude of
the step voltage applied to the series arrangement of the capacitor and the resistor
which should be varied, rather than the resistance via which the capacitor is to be
charged. The amplitude can be varied in various manners, preferably by means of a
potentiometer which operates as voltage divider for the step voltage. The tolerance
of this potentiometer is not relevant because it is now the ratio between two equally
inaccurate resistances which matters. The step voltage, and hence the oscillation
frequency, are now directly proportional to the setting of the potentiometer, regardless
of its tolerance.
[0006] The amplitude of the step voltage can also be adjusted in other ways, for example
by means a resistor in series with a zener diode which, by means of a switch, is selected
from a group of at least two zener diodes having different zener voltages. In this
way, it is possible to generate a number of discrete step voltages.
[0007] The RC oscillator in accordance with the invention is suitable for timers in general
but particularly for electrical appliances which should be turned off after a given
time, such as toasters, sunbeds and the like.
[0008] These and other aspects of the invention will be described and elucidated with reference
to the accompanying drawings, in which
Figure 1 is a circuit diagram illustrating the principle of an RC oscillator in accordance
with the invention;
Figure 2 is a circuit diagram of a prior-art variable RC oscillator;
Figure 3 is a circuit diagram of a first embodiment of a variable RC oscillator in
accordance with the invention;
Figure 4 is a circuit diagram of a second embodiment of a variable RC oscillator in
accordance with the invention;
Figure 5 shows a toaster having a timer based on a variable RC oscillator in accordance
with the invention; and
Figure 6 is a circuit diagram of the toaster shown in Figure 5.
[0009] In these Figures like parts bear the same reference symbols.
[0010] Figure 1 shows the circuit diagram illustrating the basic principle of an RC oscillator.
A capacitor 2 is charged via a resistor 4 by applying a step voltage Us from a voltage
source 6. As soon as the voltage across the capacitor 2 has reached a threshold value
the capacitor 2 is discharged either in that the capacitor 2 is discharged by means
of a switch, as is customary in timer ICs of the type "555", or in that the step voltage
Us is inverted as is customary in timers of the type "4060". The time constant of
the series arrangement of the capacitor 2 and the resistor 4 determines the frequency
of the RC oscillator. In timers having a timing range of the order of seconds or minutes
it is customary to reduce the oscillation frequency by means of a frequency divider.
[0011] As is known from the prior art and is shown in Figure 2, the frequency can be varied
by making the resistance of the resistor 4 adjustable. The resistor 4 in the circuit
diagram of Figure 2 has been replaced by a fixed resistor 10, a variable resistor
8 arranged in series with this fixed resistor, and a fixed resistor 12 arranged in
parallel with the variable resistor 8. The variable resistor 8 is usually a rotary
or sliding potentiometer, which for cost price reasons generally exhibits a fairly
large tolerance on its nominal resistance value. As a result of this, the absolute
resistance value and, consequently, the time setting of the timer for a given position
of the wiper of the potentiometer also have a large tolerance. Identical appliances
equipped with such a timer will exhibit different time settings for the same position
of the timer knob.
[0012] Figure 3 shows a solution to this problem. The tolerance problem is solved by not
making the series resistor 4 variable but the step voltage Us from the voltage source
6. A potentiometer 14 is connected across the voltage source 6 and has its wiper connected
to the series arrangement of the capacitor 2 and the resistor 4. The wiper of the
potentiometer 14 divides the total resistance of the potentiometer into two fractions
whose resistance ratio determines the amplitude of the outgoing step voltage. The
resistance ratio is only determined by the mechanical position of the wiper. Thus,
the influence of the tolerance of the variable resistor is eliminated.
[0013] Figure 4 shows a variant in which the step voltage Us from the voltage source 6 is
varied by means of a resistor 16 in series with a zener diode. By means of respective
selector switches 22 and 24 the zener diode can be selected from a group of at least
two zener diodes 18 and 20 having different zener voltages. The zener diodes limit
the step voltage to different values. The smaller the zener voltage, the longer it
takes before the capacitor 2 is charged to the required threshold voltage and the
lower the oscillation frequency is.
[0014] Figure 5 shows a toaster having an adjustable toasting time. The toasting time is
adjustable by means of a rotary knob 26 mounted on the spindle of the potentiometer
14. Toasting is started by pushing down a handle 28, which lowers the bread into the
toasting chamber and also activates the timer circuit of the toaster.
[0015] Figure 6 shows the circuit diagram of the timer circuit of the toaster. The toaster
has an electric heating element 30, which can be connected to the a.c. mains terminals
34 and 36 via a switch 32. The switch 32 is closed when the handle 28 (see Figure
5) is in its fully lowered position. The alternating voltage across the heating element
30 is rectified by means of a diode 38 and a smoothing capacitor 40 to provide the
supply voltage for a timer IC 42 of the type HEF 4060 (14-Stage Ripple-Carry Binary
Counter/Divider and Oscillator) availaLle from Philips Semiconductors or of a similar
type. The timer IC 42 drives a coil 46 via a PNP transistor 44, which coil locks the
handle 28 until the time set by means of the knob 26 (see Figure 5) has expired. The
handle is then unlocked. As a result of this, the switch 32 is opened and the handle
28 moves upward automatically.
[0016] The timer IC 42 is reset at a pin p12 by means of a capacitor 48 and a resistor 50,
as a result of which the output at a pin p3 goes low and the PNP transistor 44 is
turned on, causing the coil 46 to be energized. By means of a switch 52 the base-emitter
junction of the PNP transistor 44 can be short-circuited so as to enable the toasting
process to be terminated prematurely. The timer IC 42 includes an inverter having
an input connected to a pin p10 and having an output connected to a pin p9. In operation
the output p9 carries a step voltage which is variable by means of the potentiometer
14 and a limiting resistor 54 between the pin p9 and signal ground. The variable step
voltage on the wiper of the potentiometer 14 is fed back to the input p10 of the inverter
via a series arrangement of the capacitor 2 and resistors 56, 58 and 60, a temperature-sensitive
resistor 62 being arranged in parallel with the resistor 58 so as to provide a correction
for a cold and warm operating condition of the toaster. Furthermore, a resistor 64
is connected between a pin p11 of the timer IC 42 and the node between the capacitor
2 and the resistor 58. For the purpose of the resistor 64 and for further details
about the timer IC 42 reference is made to the relevant manufacturer's data sheets.
[0017] After a reset via the pin p12 the internal counter of the timer IC 42 counts the
number of periods of the RC oscillator. After some time, adjustable by means of the
potentiometer 14, the output at the pin p3 goes high, as a result of which the PNP
transistor 44 is turned off. The coil 46 then no longer receives any energizing current,
so that the toaster is switched off.
[0018] The timer circuit can be used as a self-contained unit or it can be incorporated
in electrical appliances. Obviously, the timer circuit is not only suitable for use
in toasters but in all kinds of other appliances which should be turned off automatically
after expiry of an adjustable time, such as sunbeds, ovens and the like.
1. An RC oscillator having a controllable oscillation frequency, comprising:
a series arrangement of a capacitor (2) and resistor (4), and a signal source (6)
for supplying a step signal to the series arrangement, the oscillation frequency in
operation being dependent upon the time which expires until the capacitor (2) has
been charged to a given value, characterized in that the signal source (6). comprises an adjustable voltage divider (14), the divider
being arranged in parallel to the signal source (6) for dividing the amplitude of
the step signal and having an output connected to the series arrangement for supplying
a divided step signal to the series arrangement.
2. An RC oscillator as claimed in Claim 1, characterized in that the adjustable voltage divider is a potentiometer (14) having a wiper coupled to
the series arrangement (4, 2).
3. An RC oscillator as claimed in Claim 1, characterized in that the adjustable voltage divider is a further series arrangement of a further resistor
(16) and a zener diode (18) Which can be selected from a plurality of at least two
zener diodes (18, 20) with the aid of switching means (22, 24), the first-mentioned
series arrangement (4, 2) being coupled to a node between the further resistor (16)
and the zener diode (18).
4. An electric toaster comprising: an electric heating element (30), means (32) for connecting
the heating element (30) to an electric power source (34, 36), an adjustable timer
(42) for disconnecting the heating element (30) from the electric power source (34,
36) after expiry of an adjustable time, the adjustable timer (42) including an RC
oscillator as claimed in Claim 1, 2, or 3.
1. RC-Oszillator mit einer regelbaren Oszillatorfrequenz, wobei dieser Oszillator die
nachfolgenden Elemente umfasst: eine Reihenschaltung aus einem Kondensator (2) und
einem Widerstand (4), und eine Signalquelle (6) zum Liefern eines Schrittsignals zu
der Reihenschaltung, wobei die Oszillatorfrequenz im Betrieb abhängig ist von der
Zeit, die vergeht, bis der Kondensator (2) auf einen bestimmten Wert aufgeladen ist,
dadurch gekennzeichnet, dass die Signalquelle (6) einen einstellbaren Spannungsverteiler (14) aufweist, wobei
dieser Verteiler zu der Signalquelle (6) parallel geschaltet ist zum Verteilen der
Amplitude des Schrittsignals und einen Ausgang hat, der mit der Reihenschaltung verbunden
ist zum Liefern eines verteilten Schrittsignals zu der Reihenschaltung.
2. RC-Oszillator nach Anspruch 1, dadurch gekennzeichnet, dass der einstellbare Spannungsteiler ein Potentiometer (14) ist mit einem Schieber, der
mit der Reihenschaltung (4, 2) gekoppelt ist.
3. RC-Oszillator nach Anspruch 1, dadurch gekennzeichnet, dass der einstellbare Spannungsteiler eine weitere Reihenschaltung aus einem weiteren
Widerstand (16) und einer Zener-Diode (18) ist, die mit Hilfe eines Schaltmittels
(22, 24) aus einer Anzahl von wenigstens zwei Zener-Dioden (18, 20) selektiert werden
kann, wobei die erst genannte Reihenschaltung (4, 2) mit einem Knotenpunkt zwischen
dem weiteren Widerstand (16) und der Zener-Diode (18) gekoppelt ist.
4. Elektrischer Brotröster mit einem elektrischen Heizelement (30), mit Mitteln (32)
zum Verbinden des Heizelementes (30) mit einer elektrischen Speisequelle (34, 36),
mit einem einstellbaren Zeitschalter (42) zum Entkoppeln des Heizelementes (30) von
der elektrischen Speisequelle (34, 36) nach Ablauf einer einstellbaren Zeit, wobei
der einstellbare Zeitschalter (42) einen RC-Oszillator nach Anspruch 1, 2 oder 3 umfasst.
1. Oscillateur RC présentant une fréquence d'oscillation réglable, comprenant : un montage
en série d'un condensateur (2) et d'une résistance (4), et une source de signal (6)
pour l'application d'un signal de pas au montage en série, la fréquence d'oscillation
étant dépendante, lors du fonctionnement, du temps qui s'écoule jusqu'à ce que le
condensateur (2) soit chargé jusqu'à une valeur déterminée, caractérisé en ce que la source de signal (6) est muni d'un diviseur de tension réglable (14), le diviseur
de tension étant monté en parallèle par rapport à la source de signal (6) afin de
diviser l'amplitude du signal de pas et présentant une sortie connectée au montage
en série afin de fournir un signal de pas divisé au montage en série.
2. Oscillateur RC selon la revendication 1, caractérisé en ce que le diviseur de tension réglable est constitué par un potentiomètre (14) présentant
un curseur couplé au montage en série (4, 2).
3. Oscillateur RC selon la revendication 1, caractérisé en ce que le diviseur de tension réglable est constitué par un autre montage en série d'une
autre résistance (16) et d'une diode de zener (18), qui peut être choisie dans une
pluralité d'au moins deux diodes de zener (18, 20) à l'aide de moyens de commutation
(22, 24), le montage en série mentionné en premier lieu (4, 2) étant couplé à un noeud
compris entre l'autre résistance (16) et la diode de zener (18).
4. Grille-pain électrique comprenant : un élément de chauffage électrique (30), des moyens
(32) permettant de connecter l'élément de chauffage électrique (30) à une source de
puissance électrique (34, 36), une minuterie réglable (42) permettant de déconnecter
l'élément de chauffage (30) de la source de puissance électrique (34, 36) après l'expiration
d'un temps réglable, la minuterie réglable (42) comprenant un oscillateur RC comme
revendiqué dans la revendication 1, 2 ou 3.